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胆固醇在单体和聚二甲基甲基丙烯酸月桂酯聚合物上的化学接枝,是迈向开发用于生物医学应用的新型聚合物的一步。

Chemical grafting of cholesterol on monomer and PDMMLA polymers, a step towards the development of new polymers for biomedical applications.

作者信息

Gholizadeh Elnaz, Belibel Rima, Bachelart Thomas, Bounadji Chérifa, Barbaud Christel

机构信息

Université Sorbonne Paris Nord, Laboratory for Vascular Transitional Science (LVTS), INSERM UMR 1148 Villetaneuse F-93430 France

KymiaNova Châtenay Malabry F-92290 France.

出版信息

RSC Adv. 2020 Sep 2;10(54):32602-32608. doi: 10.1039/d0ra06033j. eCollection 2020 Sep 1.

Abstract

Racemic α,α,β-trisubstituted β-lactones are the monomer units of poly((,)-3,3-dimethylmalic acid) (PDMMLA) derivatives, new biopolyesters showing great potential for biomedical applications. Using different groups during the synthesis of these β-lactones allows a tailored synthesis of PDMMLA copolymers with adjustable hydrophilic/phobic ratio. The degradation kinetics of the employed material is one of the most important criteria in the development of bioresorbable implants. The degradation time of PDMMLA derivatives can be controlled using different β-lactones of different hydrophilicity levels during the polymerization stage. Furthermore, PDMMLA has chemically available groups on its side chain allowing to graft functional groups on the polymer covalent bonds. In this work, following a Steglich esterification protocol, the chemical grafting of cholesterol was carried out on a PDMMLA monomer derived β-lactone as well as on homopolymer PDMMLA-H, and copolymer PDMMLAH--Hex (PDMMLA 40/60). Nuclear magnetic resonance (NMR) analyses of the products confirm and quantify the grafting ratio. 100% of cholesterol grafting has been realized on the homopolymer PDMMLA-H giving PDMMLA-Chol, and 10% on the copolymer PDMMLA 40/60, giving PDMMLAH--Chol--Hex (PDMMLA-Chol 30/10/60) as wished. Fourier-transform infrared (FT-IR) spectra, elemental analysis on the β-lactones and thermogravimetric analyses on the polymers also confirm the chemical modification of the products.

摘要

外消旋α,α,β-三取代β-内酯是聚((,)-3,3-二甲基苹果酸)(PDMMLA)衍生物的单体单元,这种新型生物聚酯在生物医学应用中显示出巨大潜力。在这些β-内酯的合成过程中使用不同的基团,可以定制合成具有可调节亲水/疏水比例的PDMMLA共聚物。所用材料的降解动力学是生物可吸收植入物开发中最重要的标准之一。在聚合阶段使用不同亲水性水平的不同β-内酯,可以控制PDMMLA衍生物的降解时间。此外,PDMMLA在其侧链上有可用于化学修饰的基团,能够在聚合物共价键上接枝官能团。在这项工作中,按照施陶丁格酯化方案,在PDMMLA单体衍生的β-内酯以及均聚物PDMMLA-H和共聚物PDMMLAH-Hex(PDMMLA 40/60)上进行了胆固醇的化学接枝。对产物的核磁共振(NMR)分析证实并量化了接枝率。在均聚物PDMMLA-H上实现了100%的胆固醇接枝,得到PDMMLA-Chol,在共聚物PDMMLA 40/60上实现了10%的接枝,如愿得到PDMMLAH-Chol-Hex(PDMMLA-Chol 30/10/60)。傅里叶变换红外(FT-IR)光谱、β-内酯的元素分析以及聚合物的热重分析也证实了产物的化学改性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee47/9056615/305c571f4fa7/d0ra06033j-s1.jpg

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